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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >STEM-EDS analysis of fission products in neutron-irradiated TRISO fuel particles from AGR-1 experiment
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STEM-EDS analysis of fission products in neutron-irradiated TRISO fuel particles from AGR-1 experiment

机译:通过AGR-1实验对中子辐照的TRISO燃料颗粒中的裂变产物进行STEM-EDS分析

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Historic and recent post-irradiation-examination from the German AVR and Advanced Gas Reactor Fuel Development and Qualification Project have shown that 110 m Ag is released from intact tristructural isotropic (TRISO) fuel. Although TRISO fuel particle research has been performed over the last few decades, little is known about how metallic fission products are transported through the SiC layer, and it was not until March 2013 that Ag was first identified in the SiC layer of a neutron-irradiated TRISO fuel particle. The existence of Pd-and Ag-rich grain boundary precipitates, triple junction precipitates, and Pd nano-sized intragranular precipitates in neutron-irradiated TRISO particle coatings was investigated using Scanning Transmission Electron Microscopy and Energy Dispersive Spectroscopy analysis to obtain more information on the chemical composition of the fission product precipitates. A U-rich fission product honeycomb shape precipitate network was found near a micron-sized precipitate in a SiC grain about similar to 5 mu m from the SiC-inner pyrolytic carbon interlayer, indicating a possible intragranular transport path for uranium. A single Ag-Pd nano-sized precipitate was found inside a SiC grain, and this is the first research showing such finding in irradiated SiC. This finding may possibly suggest a possible Pd-assisted intragranular transport mechanism for Ag and may be related to void or dislocation networks inside SiC grains. Preliminary semi-quantitative analysis indicated the micron-sized precipitates to be Pd2Si2U with carbon existing inside these precipitates. However, the results of such analysis for nano-sized precipitates may be influenced by the SiC matrix. The results reported in this paper confirm the co-existence of Cd with Ag in triple points reported previously. (C) 2016 Published by Elsevier B.V.
机译:来自德国AVR和先进气体反应堆燃料开发与鉴定项目的历史和最近的辐射后检验表明,完整的三结构各向同性(TRISO)燃料释放了110 m Ag。尽管TRISO燃料颗粒研究已进行了近几十年,但对于金属裂变产物如何通过SiC层传输的信息知之甚少,直到2013年3月才在中子辐照的SiC层中首次发现Ag。 TRISO燃料颗粒。利用扫描透射电子显微镜和能量色散光谱法研究了中子辐照的TRISO粒子涂层中富Pd和Ag富集晶界析出物,三重结合析出物和Pd纳米级颗粒内析出物的存在,以获取有关该化学物质的更多信息。裂变产物的组成沉淀。在SiC晶粒内约SiC内热解碳中间层约5μm处的微米级沉淀附近,发现了富铀裂变产物蜂窝状沉淀网络,表明铀可能存在颗粒内传输路径。在SiC晶粒内发现了一个单一的Ag-Pd纳米级沉淀物,这是首次在辐照SiC中显示出这种发现的研究。这一发现可能暗示了一种可能的Pd辅助的Ag颗粒内传输机制,并且可能与SiC晶粒内部的空隙或位错网络有关。初步的半定量分析表明,微米级沉淀物为Pd2Si2U,其中存在碳。但是,这种对纳米尺寸沉淀物的分析结果可能会受到SiC基体的影响。本文报道的结果证实了先前报道的三点中Cd与Ag的共存。 (C)2016由Elsevier B.V.发布

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